Differential expression of the liver proteome in senescence accelerated mice
- 9 October 2003
- journal article
- research article
- Published by Wiley in Proteomics
- Vol. 3 (10), 1883-1894
- https://doi.org/10.1002/pmic.200300562
Abstract
The senescence-accelerated mouse (SAM) is a useful animal model to study aging or age-associated disorders due to its inherited aging phenotype. To investigate proteins involved in the aging process in liver, we compared the young (4- or 20-week old) and the aged group (50-week-old) of SAMP8 (short life span) and SAMR1 (control) mice, and identified 85 differentially expressed distinct proteins comprising antioxidation, glucose/amino acid metabolism, signal transduction and cell cycle systems using proteomics tools. For the antioxidation system, the aged SAMP8 mice showed a large increase in glutathione peroxidase and decreases in glutathione-S-transferase and peroxiredoxin, ranging from 2.5- to 5-fold, suggesting lower detoxification potentials for oxidants in the aged SAMP8 liver. Similarly, levels of key glycolytic enzymes decreased greatly in the aged SAMP8 compared to SAMR1, indicating a disturbance in glucose homeostasis that may be closely related to the typical deficits in learning and memory of the aged SAMP8. Protein profiles of amino acid metabolic enzymes suggest that accumulation of glutamine and glutamate in tissues of the aged SAMP8 may be due to hyperexpression of ornithine aminotransferase and/or glutamate dehydrogenase. Decreases in levels of proteins involved in signal transduction/apoptosis (e.g., cathepsin B) in the aged SAMP8 may support the previously proposed negative relationship between apoptosis and aging. However, the changes described above were not markedly seen in the young group of both strains. For cell cycle systems, levels of selenium binding protein increased about four-fold with age in SAMP8. Yet, almost no change occurred in either the young or the aged SAMR1, which may explain problems associated with cell proliferation and tissue regeneration in the aged SAMP8. In conclusion, composite profiles of key proteins involved in age-related processes enable assessment of accelerated senescence and the appearance of senescence-related pathologies in the aged SAMP8.Keywords
This publication has 47 references indexed in Scilit:
- A novel protein overexpressed in hepatoma accelerates export of NF-κB from the nucleus and inhibits p53-dependent apoptosisCancer Cell, 2002
- A Genomic and Proteomic Analysis of Activation of the Human Neutrophil by Lipopolysaccharide and Its Mediation by p38 Mitogen-activated Protein KinaseJournal of Biological Chemistry, 2002
- Proteomic analysis and molecular characterization of tissue ferritin light chain in hepatocellular carcinomaHepatology, 2002
- Differential Expression of the L-Plastin Gene in Human Colorectal Cancer Progression and MetastasisBiochemical and Biophysical Research Communications, 2001
- Management and design of the maintenance of sam mouse strains: an animal model for accelerated senescence and age-associated disordersExperimental Gerontology, 1997
- Atherogenic change in the thoracic aorta of the senescence-accelerated mouseAtherosclerosis, 1995
- The selenium metabolite selenodiglutathione induces cell death by a mechanism distinct from H2O2 toxicityCarcinogenesis: Integrative Cancer Research, 1995
- Different patterns of regulation of the genes encoding the closely related 56 kDa selenium- and acetaminophen-binding proteins in normal tissues and during carcinogenesisCarcinogenesis: Integrative Cancer Research, 1993
- Changes in the expression of superoxide dismutase and catalase as a function of age and dietary restrictionBiochemical and Biophysical Research Communications, 1989
- Comparison of cytoplasmic superoxide dismutase in liver, heart and brain of aging rats and miceBiochemical and Biophysical Research Communications, 1976